Results 211 to 220 of about 521,592 (270)
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Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications
In this study, the crank-arm of the slider-crank mechanism was produced with different raster angles (45°, 90°, 135°) and infill densities (25%, 50%, 75%, 100%). The effect of these parameters on the dynamics of the slider was investigated experimentally
Çağlar Sevim +3 more
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In this study, the crank-arm of the slider-crank mechanism was produced with different raster angles (45°, 90°, 135°) and infill densities (25%, 50%, 75%, 100%). The effect of these parameters on the dynamics of the slider was investigated experimentally
Çağlar Sevim +3 more
semanticscholar +1 more source
Static equelibrium of the slider crank mechanism
Proceedings. The 8th Russian-Korean International Symposium on Science and Technology, 2004. KORUS 2004., 2005The conditions of an automatic equilibration provided by pendulums of the slider crank mechanism located on a horizontal platform with elastic connections are obtained.
V.M. Zamyatin, V.A. Dubovik
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Dynamics of the Generalized Slider-Crank Mechanism
19th Design Automation Conference: Volume 1 — Mechanical System Dynamics; Concurrent and Robust Design; Design for Assembly and Manufacture; Genetic Algorithms in Design and Structural Optimization, 1993Abstract Dual-number techniques are used to analyze the dynamics of the slider crank mechanism generalized to consider the effects of the cylinder axis being offset and non-perpendicular to the crankshaft axis, conditions which result in reciprocating machinery such as engines and compressors from manufacturing tolerances.
Ian S. Fischer, Sahidur Rahman
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Classical transmission-angle problem for slider–crank mechanisms
Mechanism and Machine Theory, 2002zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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Crank-Slider With Spring Constant Force Mechanism
Volume 2: 28th Biennial Mechanisms and Robotics Conference, Parts A and B, 2004This paper explores the development and performance of new constant-force compliant mechanisms that involve the addition of a translational spring element to slider-crank constant force mechanisms. The translational spring element has the additional requirement that, similar to a slider, it resists off-axis loads sufficiently to permit translation ...
Bart D. Frischknecht +2 more
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Velocity fluctuation in spatial slider crank mechanisms
Mechanism and Machine Theory, 1981Abstract Velocity fluctuations have been recognized as important in the statics and dynamics of mechanisms [1]. The geometric conditions governing the existence of extreme velocity ratios in a spatial 4-link mechanism having two revolute, one cylindrical and one prismatic pair have been obtained.
R.V. Dukkipati, M.O.M. Osman
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Kinematics of the Generalized Slider-Crank Mechanism
19th Design Automation Conference: Volume 1 — Mechanical System Dynamics; Concurrent and Robust Design; Design for Assembly and Manufacture; Genetic Algorithms in Design and Structural Optimization, 1993Abstract Dual-number techniques are used to analyze the kinematics and dynamics of the slider crank mechanism generalized to consider the effects of the cylinder axis being offset and non-perpendicular to the crankshaft axis, conditions which result in reciprocating machinery such as engines and compressors from manufacturing tolerances.
Ian S. Fischer, Sahidur Rahman
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Crank-Slider Mechanism of a Piston
2011The purpose of this chapter is to give MATLAB® users a better understanding on how to animate a physical system that has more than one component in a virtual reality environment. This chapter will also help the reader to implement a simple PID controller to control a ball on a plate and visualize the performance of the controller.
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Chaotic Response of a Slider Crank Mechanism
Journal of Vibration and Acoustics, 1991A physical and corresponding theoretical model of a slider-crank mechanism is presented that approximates the single mode response of a continuous beam under a time periodic excitation in which the spatial distribution of the forcing is in the form of a half sine wave.
J. Peurach, B. H. Tongue
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Geometric design of slider-crank mechanisms for desirable slider positions and velocities
Forschung im Ingenieurwesen, 2011In problems requiring uniform cutting speeds uniform flow rates etc. slider-crank mechanisms provide economical solutions. Thus, the problem of designing slider-crank mechanisms for desirable slider positions and velocities is handled within a geometric framework in this paper.
Akçal I.D., Arioglu M.A.
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